Indoor air cleaning network mechanism system
Abstract
An indoor air cleaning system with networking mechanism is provided for detecting and purifying air pollution in indoor field to a level close to zero. Through arranging plural gas detectors, at least one gas molecule controlling hardware apparatus and a networking cloud computing server, and communicating the gas detectors arranged in indoor field and outdoor field and the gas detector installed inside each gas molecule controlling hardware apparatus with the cloud to form an intelligent linking system, the gas guider in the gas molecule controlling hardware apparatus can be enabled in real time for monitoring the air quality of the indoor field anytime and anywhere. Each gas molecule controlling hardware apparatus includes at least one gas guider, at least one filter element and at least one driving controller for detecting, filtering and purifying air pollution through networking control, thereby achieving a cleanness of cleanroom class.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An indoor air cleaning system with networking mechanism, comprising:
a plurality of gas detectors arranged in an indoor field and an outdoor field for detecting air pollution information and temperature and humidity information of gas; a networking cloud computing server receiving the air pollution information and the temperature and humidity information of gas of the indoor field and the outdoor field, storing thereof to form a big data database of air pollution data, and intelligently issuing a control instruction; and at least one gas molecule controlling hardware apparatus disposed in the indoor field and comprising at least one of the plurality of gas detectors disposed therein, wherein the at least one gas molecule controlling hardware apparatus comprises at least one gas exchange device, at least one purifier, at least one fan filter unit, at least one exhaust device, at least one smoke exhaust system, at least one dehumidifier, at least one vacuum cleaner and at least one air conditioning device, and each of the at least one gas molecule controlling hardware apparatus comprises at least one gas guider, at least one filter element and at least one driving controller, wherein a gas detector disposed in the at least one gas molecule controlling hardware apparatus is electrically connected to the at least one driving controller, and the gas detector receives the control instruction via Internet of Things (IoT) communication and provides the control instruction to the at least one driving controller for controlling the at least one gas guider to execute a purification procedure for reaching cleanroom class with a level of air pollution close to zero through exchanging a gas in the indoor field, adjusting a temperature and a humidity of the indoor field, and guiding an air pollution to pass through the at least one filter element multiple times, and wherein the gas detector outputs the air pollution information and the temperature and humidity information of gas of the indoor field, wherein the networking cloud computing server receives the air pollution information and the temperature and humidity information of gas detected by the plurality of gas detectors, performs an intelligence computing for comparison based on the big data database of air pollution data, and intelligently selects and issues the control instruction to the at least one gas guider of the at least one gas molecule controlling hardware apparatus for enabling the operation of the at least one gas guider, thereby executing the purification procedure for reaching cleanroom class with a level of air pollution close to zero through guiding the air pollution in the indoor field to pass through the at least one filter element, and achieving a cleanness of cleanroom class through detecting and purifying the air pollution in real time.
2 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the indoor field comprises at least one gas introducing opening and at least one gas discharging opening, the gas exchange device comprises a gas guiding channel, the gas guiding channel comprises a gas introducing port corresponding to the gas introducing opening of the indoor field, a circulation returning port communicated with the indoor field, and a gas filtering channel communicated with the indoor field, a gas exchanger is disposed near the circulation returning port, and the gas filtering channel has the at least one gas guider and the at least one filter element disposed therein, and wherein the networking cloud computing server intelligently computes to compare the air pollution information and the temperature and humidity information of gas of the indoor field and of the outdoor field, and when a level of the air pollution information of the indoor field is higher than that of the outdoor field, the networking cloud computing server issues the control instruction via IoT communication to the gas detector inside the gas exchange device for controlling the at least one driving controller to enable the at least one gas guider and the gas exchanger, so that the gas in the outdoor field is introduced into the gas filtering channel through the gas introducing opening, filtered through passing through the at least one filter element, and enters the indoor field, and at the same time, a gas in the indoor field enters the gas filtering channel again for circulation and filtration, thereby achieving a temperature adjustment and a gas exchange.
3 . The indoor air cleaning system with networking mechanism as claimed in claim 2 , wherein the air pollution information of the indoor field and the outdoor field is a level of carbon dioxide (CO 2 ), and the gas exchange is to reach a level of carbon dioxide difference between the indoor field and the outdoor field close to zero; and wherein the gas exchange device is a fresh air exchanging system, an energy recovery ventilation system, or a heating, ventilation and air conditioning (HVAC) system, and when the gas exchange device is enabled to perform the gas exchange, a positive pressure higher than 0 Pa is maintained in the indoor field, thereby preventing the air pollution in the outdoor field from entering the indoor field.
4 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the purifier is disposed in the indoor field in a plug-in manner, and the networking cloud computing server issues the control instruction via IoT communication to the gas detector inside the purifier for controlling the at least one driving controller to enable the at least one gas guider, so that the air pollution in the indoor field is guided to pass through the at least one filter element for filtration and purification, and a purified air is further introduced into the indoor field, thereby guiding the air pollution in the indoor field to pass through the at least one filter element multiple times for executing the purification procedure for reaching cleanroom class with a level of air pollution close to zero.
5 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the fan filter unit (FFU) is disposed in the indoor field in a build-in manner, the fan filter unit (FFU) comprises a guiding channel, the gas guiding channel comprises a circulation returning port communicated with the indoor field and a gas filtering channel communicated with the indoor field, and the gas filtering channel has the at least one gas guider and the at least one filter element disposed therein, and wherein the networking cloud computing server issues the control instruction via IoT communication to the gas detector inside the fan filter unit (FFU) for controlling the at least one driving controller to enable the at least one gas guider, so that the air pollution in the indoor field is guided to enter the gas filtering channel through the circulation returning port and pass through the at least one filter element for filtration and purification, and a purified air is further introduced into the indoor field, thereby guiding the air pollution in the indoor filed to enter the guiding channel multiple times for effectively inhibiting a gas backflow effect during circulation and filtration and achieving the purification procedure for reaching cleanroom class with a level of air pollution close to zero.
6 . The indoor air cleaning system with networking mechanism as claimed in claim 2 , wherein the exhaust device is disposed in the indoor field in a build-in manner, and is corresponding to the gas discharging opening for exhausting a gas to the outdoor field B, and wherein the networking cloud computing server issues the control instruction via IoT communication to the gas detector inside the exhaust device for controlling the at least one driving controller to enable the at least one gas guider, so that the air pollution in the indoor field is guided by the at least one gas guider to pass through the at least one filter element for filtration and purification and exhaust to the outdoor field, thereby achieving the purification procedure for reaching cleanroom class with a level of air pollution close to zero.
7 . The indoor air cleaning system with networking mechanism as claimed in claim 2 , wherein the smoke exhaust system is disposed in a kitchen of the indoor field, the smoke exhaust system comprises a gas discharging channel disposed above a cooker, corresponding to the gas discharging opening and communicated with the outdoor field, and the gas discharging channel has the at least one gas guider, the at least one filter element and the at least one driving controller disposed therein; the smoke exhaust system further comprises a smoke discharging main part disposed in front of the cooker, corresponding to the gas discharging opening and communicated with the outdoor field, and the smoke discharging main part has the at least one gas guider, the at least one filter element and the at least one driving controller disposed therein; and each of the gas discharging channel and the smoke discharging main part has a gas detector installed therein and electrically connected to the at least one driving controller; and wherein the networking cloud computing server issues the control instruction via IoT communication to respective gas detectors inside the gas discharging channel and the smoke discharging main part for controlling respective driving controllers to enable respective gas guiders, so that the air pollution in kitchen of the indoor field is guided to enter the gas discharging channel and the smoke discharging main part and pass through the at least one filter element for filtration and purification, and exhaust to the outdoor field, thereby achieving the purification procedure for reaching cleanroom class with a level of air pollution close to zero.
8 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the dehumidifier is disposed in the indoor field in a plug-in manner, and the networking cloud computing server issues the control instruction via IoT communication to the gas detector inside the dehumidifier for controlling the at least one driving controller to enable the at least one gas guider, so that the air pollution in the indoor field is guided to pass through the at least one filter element for filtration and purification, thereby achieving the purification procedure for reaching cleanroom class with a level of air pollution close to zero, and adjusting temperature and humidity of a gas in the indoor field; and wherein the humidifier is set to have a safety value of temperature at 25° C.±3° C., and a safety value of humidity at 50%±10%.
9 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the vacuum cleaner is disposed in the indoor field in a plug-in manner, and the networking cloud computing server issues the control instruction via IoT communication to the gas detector inside the vacuum cleaner for controlling the at least one driving controller to enable the at least one gas guider, so that the air pollution in the indoor field is guided to pass through the at least one filter element for filtration and purification, thereby achieving the purification procedure for reaching cleanroom class with a level of air pollution close to zero.
10 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the air conditioning device is disposed in the indoor field and comprises a heat exchanger; wherein the networking cloud computing server issues the control instruction via IoT communication to the gas detector inside the air conditioning device for controlling the at least one driving controller to enable the at least one gas guider, so that the air pollution in the indoor field is guided to pass through the at least one filter element for filtration and purification so as to achieve the purification procedure for reaching cleanroom class with a level of air pollution close to zero, and a gas in the indoor filed is guided to pass through the heat exchanger for adjusting a temperature and a humidity of the gas in the indoor field; and wherein the air conditioning device is set to adjust the temperature of the indoor field at 25° C.±3° C. and the humidity of the indoor field A at 50%±10%.
11 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the IoT communication is a wired communication for the networking cloud computing server to communicate in a wired manner or a wireless communication for the networking cloud computing server to communicate wirelessly, wherein the wireless communication is one selected from the group consisting of a Wi-Fi communication, a Bluetooth communication, a radio frequency identification communication and a near field communication.
12 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the gas detector comprises a controlling circuit board, a gas detection main part, a microprocessor and a communicator, wherein the controlling circuit board is electrically connected to the at least one driving controller, the gas detection main part, the microprocessor and the communicator are integrally packaged on the controlling circuit board and electrically connected to the controlling circuit board, the microprocessor controls a detection operation of the gas detection main part for detecting the air pollution, and the microprocessor processes and provides the air pollution information to the communicator for external communication transmission.
13 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the at least one filter element is a MERV (Minimum Efficiency Reporting Value) 8 filter screen or above.
14 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the at least one filter element is a high efficiency particulate air (HEPA) filter screen, and the HEPA filter screen is a HEPA 10 filter screen or above with a dust containing capacity larger than 12000 mg.
15 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the at least one filter element is combined with a decomposition layer through coating for sterilizing in chemical means by passing therethrough the air pollution, wherein the decomposition layer comprises an activated carbon having an absorptive capacity of formaldehyde larger than 1500 mg, or comprises one selected from the group consisting of a cleansing factor containing chlorine dioxide layer, an herbal protective layer extracted from ginkgo and Japanese Rhus chinensis , a silver ion and a zeolite.
16 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the at least one filter element is combined with a light irradiation element to sterilize in chemical means by passing therethrough the air pollution, and the light irradiation element is a photo-catalyst unit including a photo catalyst and an ultraviolet lamp, or a photo-plasma unit including a nanometer irradiation tube, wherein a power of the ultraviolet lamp is larger than 120 mW.
17 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the at least one filter element is combined with a decomposition unit to sterilize in chemical means by passing therethrough the air pollution, and the decomposition unit is a negative ion unit or a plasma ion unit.
18 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein the networking cloud computing server comprises a wireless network cloud computing service module, a cloud control service unit, a device management unit and an application program unit, and a cleanroom class is represented by a cleanness of ZAPClean room 1˜12.
19 . The indoor air cleaning system with networking mechanism as claimed in claim 18 , wherein a required equivalent of clean air delivery rate (CADR) per cubic meter for ZAPClean room 1 to ZAPClean room 12 is one selected from the group consisting of 195000˜370000 m 3 /h, 58000˜115000 m 3 /h, 17500˜35000 m 3 /h, 5200˜10000 m 3 /h, 1500˜3000 m 3 /h, 450˜1000 m 3 /h, 135˜300 m 3 /h, 60˜135 m 3 /h, 35˜80 m 3 /h, 15˜40 m 3 /h, 10˜30 m 3 /h and 3˜10 m 3 /h.
20 . The indoor air cleaning system with networking mechanism as claimed in claim 1 , wherein after a required equivalent of clean air delivery rate (CADR) of the indoor field is computed and confirmed by the networking cloud computing server, an arranged number of the at least one gas molecule controlling hardware apparatus and an optimal CADR of the gas guider are decided based on the required equivalent, thereby achieving an optimal cost effectiveness for the purification procedure for reaching cleanroom class with a level of air pollution close to zero.Join the waitlist — get patent alerts
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